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An Improved Approach for AC-DC Power Flow Calculation With Multi-Infeed DC Systems

机译:一种多馈直流系统交流-直流潮流计算的改进方法

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摘要

An improved approach based on sequential method for the AC-DC power flow calculation is proposed in this paper. This approach solves the convergence problem caused by voltage violations at AC buses during the power flow calculation for the DC subsystems. The convergence property can be significantly improved by adjusting the converter transformer tap position flexibly. In order to adjust the tap position of the converter transformer flexibly, three mainly modifications are proposed. Firstly, the equations for whole DC systems are decoupled into individual DC systems so as to easily figure out which DC system's tap position needs adjustment. Secondly, the tap ratio of a converter transformer is selected as an alternative state variable to replace the cosine of the control angle when necessary. Thirdly, the Newton-Raphson method is utilized to solve DC subsystems instead of the method using the linear equations. Furthermore, a theoretical analysis of the advantages of the proposed approach is also presented. Numerical simulations and practical applications show that the proposed approach meet the requirement of different system operating conditions and has advantages in terms of convergence and speed. The proposed approach has been successfully integrated into the Energy Management System (EMS) for China Southern Power Grid.
机译:提出了一种基于序贯法的交直流潮流计算方法。该方法解决了在直流子系统的潮流计算过程中,由于交流母线电压违规而导致的收敛问题。通过灵活地调节转换器变压器的抽头位置,可以显着改善收敛性。为了灵活地调节换流变压器的抽头位置,提出了三个主要的修改。首先,将整个直流系统的方程式解耦到各个直流系统中,以便轻松找出需要调整的直流系统的抽头位置。其次,选择换流变压器的抽头比率作为替代状态变量,以在必要时替换控制角的余弦值。第三,使用牛顿-拉夫森方法来求解直流子系统,而不是使用线性方程组。此外,还对所提出的方法的优点进行了理论分析。数值仿真和实际应用表明,该方法满足了不同系统运行条件的要求,并且在收敛性和速度方面均具有优势。该提议的方法已成功集成到南方电网的能源管理系统(EMS)中。

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